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首页> 外文期刊>Biomacromolecules >Hydrophobic Drug-Triggered Self-Assembly of Nanoparticles from Silk-Elastin-Like Protein Polymers for Drug Delivery
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Hydrophobic Drug-Triggered Self-Assembly of Nanoparticles from Silk-Elastin-Like Protein Polymers for Drug Delivery

机译:疏水性药物触发的类似丝绸-弹性蛋白蛋白聚合物的纳米粒子的自组装。

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Silk-elastin-like protein polymers (SELPs) combine the mechanical and biological properties of silk and elastin. These properties have led to the development of various SELP-based materials for drug delivery. However, SELPs have rarely been developed into nanoparticles, partially due to the complicated fabrication procedures, nor assessed for potential as an anticancer drug delivery system. We have recently constructed a series of SELPs (SE8Y, S2E8Y, and S4E8Y) with various : ratios of silk to elastin blocks and described their capacity to form micellar-like nanoparticles upon thermal triggering. In this study, we demonstrate that doxorubicin, a hydrophobic antitumor drug, can efficiently trigger the self-assembly of SE8Y (SELPs with silk to elastin ratio of 1:8) into uniform micellar-like nanoparticles. The drug can be loaded in the SE8Y nanoparticles with an efficiency around 6.5% (65 ng doxorubicin/μg SE8Y), S2E8Y with 6%, and S4E8Y with 4%, respectively. In vitro studies with HeLa cell lines demonstrate that the protein polymers are not cytotoxic (IC_(50) > 200 μg/mL), while the doxorubicin-loaded SE8Y nanoparticles showed a 1.8-fold higher cytotoxicity than the free drug. Confocal laser scanning microscopy (CLSM) and flow cytometry indicate significant uptake of the SE8Y nanoparticles by the cells and suggest internalization of the nanoparticles through endocytosis. This study provides an all-aqueous, facile method to prepare nanoscale, drug-loaded SELPs packages with potential for tumor cell treatments.
机译:类似于丝弹性蛋白的蛋白质聚合物(SELP)结合了丝和弹性蛋白的机械和生物学特性。这些特性导致开发了多种基于SELP的药物递送材料。然而,部分由于复杂的制造程序,SELP很少被开发成纳米颗粒,也未评估其作为抗癌药物递送系统的潜力。我们最近构建了一系列SELP(SE8Y,S2E8Y和S4E8Y),其丝与弹性蛋白嵌段的比率不同,并描述了它们在热触发后形成胶束状纳米颗粒的能力。在这项研究中,我们证明了阿霉素(一种疏水性抗肿瘤药物)可以有效触发SE8Y(丝与弹性蛋白比为1:8的SELP)自组装成均匀的胶束状纳米颗粒。该药物可以分别以约6.5%的效率(65 ng阿霉素/μgSE8Y),S2E8Y(6%)和S4E8Y(4%)负载在SE8Y纳米颗粒中。 HeLa细胞系的体外研究表明,蛋白质聚合物无细胞毒性(IC_(50)> 200μg/ mL),而负载阿霉素的SE8Y纳米颗粒的细胞毒性比游离药物高1.8倍。共聚焦激光扫描显微镜(CLSM)和流式细胞术表明SE8Y纳米颗粒被细胞大量吸收,并暗示通过内吞作用使纳米颗粒内在化。这项研究提供了一种全水性,简便的方法来制备具有肿瘤细胞治疗潜力的纳米级,载药量高的SELPs包装。

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